SARS-CoV-2 introduction and lineage dynamics across three epidemic peaks in Southern Brazil: massive spread of P.1

被引:13
|
作者
Muterle Varela, Ana Paula [1 ]
Prichula, Janira [1 ]
Mayer, Fabiana Quoos [2 ]
Salvato, Richard Steiner [3 ]
Sant'Anna, Fernando Hayashi [4 ]
Gregianini, Tatiana Schaffer [3 ]
Martins, Leticia Garay [5 ]
Seixas, Adriana [1 ]
Gorini da Veiga, Ana Beatriz [1 ]
机构
[1] Univ Fed Ciencias Saude Porto Alegre UFCSPA, Rua Sarmento Leite 245, BR-90050170 Porto Alegre, RS, Brazil
[2] Ctr Pesquisa Saude Anim, Inst Pesquisas Vet Desiderio Finamor, Dept Diagnost & Pesquisa Agr, Secretaria Agr Pecuaria & Desenvolvimento Rural, Estr Conde 6000, BR-92990000 Eldorado Do Sul, RS, Brazil
[3] Ctr Estadual Vigilancia Saude Secretaria Saude Es, Lab Cent Saude Publ, Av Ipiranga 5400, BR-90610000 Porto Alegre, RS, Brazil
[4] Hosp Moinhos Vento, PROADI SUS, Rua Ramiro Barcelos 910, Porto Alegre, RS, Brazil
[5] Ctr Estadual Vigilancia Saude Secretaria Saude Es, Av Ipiranga 5400, BR-90610000 Porto Alegre, RS, Brazil
关键词
Severe acute respiratory syndrome coronavirus 2; Genomic diversity; P.1; lineage; Epidemic peaks; Brazil; READ ALIGNMENT;
D O I
10.1016/j.meegid.2021.105144
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
Genomic surveillance of SARS-CoV-2 is paramount for understanding viral dynamics, contributing to disease control. This study analyzed SARS-CoV-2 genomic diversity in Rio Grande do Sul (RS), Brazil, including the first reported case in each Regional Health Coordination and cases from three epidemic peaks. Ninety SARS-CoV-2 genomes from RS were sequenced and analyzed through comparison with SARS-CoV-2 datasets available in GISAID for phylogenetic inference and mutation analysis. Among the first reported cases, we found the following lineages: B.1 (33.3%), B.1.1.28 (26.7%), B.1.1 (13.3%), B.1.1.33 (10.0%), and A (6.7%), evidencing SARS-CoV-2 introduction by both international origin and community-driven transmission. We found predominance of B.1.1.33 (50.0%) and B.1.1.28 (35.0%) during the first epidemic peak (July-August 2020), emergence of P.2 (55.6%) in the second peak (November-December 2020), and massive spread of P.1 and related sequences (78.4%), such as P.1-like-II, P.1.1 and P.1.2 in the third peak (February-April, 2021). Eighteen novel mutation combinations were found among P.1 genomes, and 22 different spike mutations and/or deletions among P.1 and related sequences. This study shows the dispersion of SARS-CoV-2 lineages in Southern Brazil and describes SARS-CoV-2 diversity during three epidemic peaks, highlighting the spread of P.1 and the high genetic diversity of currently circulating lineages. Genomic monitoring of SARS-CoV-2 is essential to guide health authorities' decisions to control COVID-19 in Brazil.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Intense P.1 (Gamma) diversification followed by rapid Delta substitution in Southern Brazil: a SARS-CoV-2 genomic epidemiology study
    Ferrareze, Patricia Aline Grohs
    Cybis, Gabriela Betella
    de Oliveira, Luiz Felipe Valter
    Zimerman, Ricardo Ariel
    Schiavon, Dieine Estela Bernieri
    Peter, Camila
    Thompson, Claudia Elizabeth
    MICROBES AND INFECTION, 2024, 26 (1-2)
  • [22] An Autochthonous Outbreak of the SARS-CoV-2 P.1 Variant of Concern in Southern Italy, April 2021
    Loconsole, Daniela
    Sallustio, Anna
    Centrone, Francesca
    Casulli, Daniele
    Ferrara, Maurizio Mario
    Sanguedolce, Antonio
    Accogli, Marisa
    Chironna, Maria
    TROPICAL MEDICINE AND INFECTIOUS DISEASE, 2021, 6 (03)
  • [23] Detection of SARS-CoV-2 lineage P.1 in patients from a region with exponentially increasing hospitalisation rate, February 2021, Rio Grande do Sul, Southern Brazil
    Martins, Andreza Francisco
    Zavascki, Alexandre Prehn
    Wink, Priscila Lamb
    Zempulski Volpato, Fabiana Caroline
    Monteiro, Francielle Liz
    Rosset, Clevia
    De-Paris, Fernanda
    Ramos, Alvaro Kruger
    Barth, Afonso Luis
    EUROSURVEILLANCE, 2021, 26 (12) : 8 - 12
  • [24] Identification of a novel SARS-CoV-2 P.1 sub-lineage in Brazil provides new insights about the mechanisms of emergence of variants of concern
    Graf, Tiago
    Bello, Gonzalo
    Martins Venas, Taina Moreira
    Pereira, Elisa Cavalcante
    Dias Paixao, Anna Carolina
    Appolinario, Luciana Reis
    Lopes, Renata Serrano
    Da Fonseca Mendonca, Ana Carolina
    Barreto da Rocha, Alice Sampaio
    Motta, Fernando Couto
    Gregianini, Tatiana Schaffer
    Salvato, Richard Steiner
    Fernandes, Sandra Bianchini
    Rovaris, Darcita Buerger
    Cavalcanti, Andrea Cony
    Leite, Anderson Brandao
    Riediger, Irina
    Debur, Maria do Carmo
    Leal Bernardes, Andre Felipe
    Ribeiro-Rodrigues, Rodrigo
    Grinsztejn, Beatriz
    do Nascimento, Valdinete Alves
    de Souza, Victor Costa
    Goncalves, Luciana
    da Costa, Cristiano Fernandes
    Mattos, Tirza
    Dezordi, Filipe Zimmer
    Wallau, Gabriel Luz
    Naveca, Felipe Gomes
    Delatorre, Edson
    Siqueira, Marilda Mendonca
    Resende, Paola Cristina
    VIRUS EVOLUTION, 2021, 7 (02)
  • [25] Comparative Genomics and Characterization of SARS-CoV-2 P.1 (Gamma) Variant of Concern From Amazonas, Brazil
    Zimerman, Ricardo Ariel
    Groehs Ferrareze, Patricia Aline
    Cadegiani, Flavio Adsuara
    Wambier, Carlos Gustavo
    Fonseca, Daniel do Nascimento
    de Souza, Andrea Roberto
    Goren, Andy
    Rotta, Liane Nanci
    Ren, Zhihua
    Thompson, Claudia Elizabeth
    FRONTIERS IN MEDICINE, 2022, 9
  • [26] Predominance of SARS-CoV-2 P.1 (Gamma) lineage inducing the recent COVID-19 wave in southern Brazil and the finding of an additional S: D614A mutation
    Demoliner, Meriane
    Silva, Mariana Soares da
    Gularte, Juliana Schons
    Hansen, Alana Witt
    Almeida, Paula Rodrigues de
    Weber, Matheus Nunes
    Heldt, Fagner Henrique
    Silveira, Flavio
    Filippi, Micheli
    Pereira, Vyctoria Malayhka de Abreu Goes
    Silva, Francini Pereira da
    Mallmann, Larissa
    Fink, Pietra
    Valim, Andreia Rosane de Moura
    Possuelo, Lia Gonsalves
    Fleck, Juliane Deise
    Spilki, Fernando Rosado
    INFECTION GENETICS AND EVOLUTION, 2021, 96
  • [27] Increased resistance of SARS-CoV-2 variant P.1 to antibody neutralization
    Wang, Pengfei
    Casner, Ryan G.
    Nair, Manoj S.
    Wang, Maple
    Yu, Jian
    Cerutti, Gabriele
    Liu, Lihong
    Kwong, Peter D.
    Huang, Yaoxing
    Shapiro, Lawrence
    Ho, David D.
    CELL HOST & MICROBE, 2021, 29 (05) : 747 - +
  • [28] First importations of SARS-CoV-2 P.1 and P.2 variants from Brazil to Spain and early community transmission
    Sola Campoy, Pedro J.
    Buenestado-Serrano, Sergio
    Perez-Lago, Laura
    Rodriguez-Grande, Cristina
    Catalan, Pilar
    Andres-Zayas, Cristina
    Alcala, Luis
    Losada, Carmen
    Rico-Luna, Carla
    Munoz, Patricia
    Garcia de Viedma, Dario
    ENFERMEDADES INFECCIOSAS Y MICROBIOLOGIA CLINICA, 2022, 40 (05): : 262 - 265
  • [29] Early detection of the SARS-CoV-2 P.1 variant in Rio Grande do Sul, Brazil: a case report
    Volpato, Fabiana Caroline Zempulski
    Wink, Priscila Lamb
    Monteiro, Francielle Liz
    Willig, Julia Biz
    Vieceli, Tarsila
    Martins, Andreza Francisco
    Zavascki, Alexandre Prehn
    Barth, Afonso Luis
    INFECTION CONTROL & HOSPITAL EPIDEMIOLOGY, 2022, 43 (12) : 1997 - 1999
  • [30] Genomic Surveillance of SARS-CoV-2 in a University Community: Insights Into Tracking Variants, Transmission, and Spread of Gamma (P.1) Variant
    Ciubotariu, Ilinca I.
    Dorman, Jack
    Perry, Nicole M.
    Gorenstein, Lev
    Kattoor, Jobin J.
    Fola, Abebe A.
    Zine, Amy
    Hendrix, G. Kenitra
    Wilkes, Rebecca P.
    Kitchen, Andrew
    Carpi, Giovanna
    OPEN FORUM INFECTIOUS DISEASES, 2022, 9 (07):